CAS: 16373-93-6; (2R,3S,5R)-5-(6-Amino-9H-Purin-9-yl)-2-(Hydroxymethyl)Tetrahydrofuran-3-Ol Hydrate

该化合物是一种核核素衍生物,广泛用于生化和制药研究;作为2'脱氧碘酸的一种水合物,它是DNA合成和修改研究的关键组成部分;其高纯度和稳定性使其适合于分子生物学应用,包括PCR,测序和核甲酰亚酸盐合成;水合物形式确保水溶性得到改善,便于其在酶反应和细胞培养研究中使用;该化合物对于研究核酸代谢,DNA修复机制以及抗病毒或抗癌药物开发具有特别宝贵的价值;其一贯的质量和可靠性能凸显了其在生命科学研究和诊断应用中的重要性.

结构式图片

相似化合物

958-09-8 51549-32-7 51549-30-5

欧盟法规

ECHA物质C&L通报

合成工艺路线路线简述

    海关参考信息

    专利信息


    专利号:US-9884885-B2
    优先权日:2009-05-18
    标题:Synthesis of labile base protected-modified deoxy and modified ribo nucleosides, corresponding phosphoramidites and supports and their use in high purity oligonucleotide synthesis
    发明人:SRIVASTAVA SURESH C; SRIVASTAVA NAVEEN P
    权利人:SRIVASTAVA SURESH C; SRIVASTAVA NAVEEN P; CHEMGENES CORP
    摘要:This invention relates to novel method of synthesis of RNA utilizing N-2-acetyl protected guanine as nucleoside base, nucleosides, succinates, phosphoramidites, corresponding solid supports that are suitable for oligo deoxy nucleosides and RNA oligonucleotide synthesis. Our discovery using N-acetyl protected guanine as nucleoside base protecting group, which is significantly faster base labile protecting group, yet significantly more stable than commonly utilized-2-isobutyryl guanosine is a novel approach to obtain highest purity oligonucleotides. This approach is designed to lead to very high purity and very clean oligonucleotide, after efficient removal of the protecting groups, including acetyl group from guanine and to produce high purity therapeutic grade DNA oligonucleotides, RNA oligonucleotides, diagnostic DNA, diagnostic RNA for microarray platform. The deprotection of acetyl protecting groups of the natural deoxy and ribonucleosides occurs under substantially reduced time in contact with mild deprotection conditions such as mild bases, secondary amines for removal of such groups under such conditions would allows synthesis of various DNA and RNA of highest purity for diagnostics and therapeutic application. This approach is designed to lead to high purity large scale therapeutic grade oligonucleotide chimeras which consist of fluoro sugar modification in conjunction with deoxy nucleosides, ribonucleosides, modified base and modified sugar nucleosides. This approach is further designed to use acetyl guanine protecting group when other bases are sensitive nucleoside, and for use in oligo peptide synthesis and for support bound oligo nucleotides.

    专利号:US-8981076-B2
    优先权日:2008-11-29
    标 题 :Synthesis of N-FMOC protected deoxy nucleosides, ribo nucleosides, modified deoxy and ribo nucleosides, and phosphoramidites, and their use in oligonucleotide synthesis
    发明人:SRIVASTAVA SURESH C; SRIVASTAVA NAVEEN P
    权利人:SRIVASTAVA SURESH C; SRIVASTAVA NAVEEN P; CHEMGENES CORP
    摘要:This invention relates to synthesis of novel -N-FMOC protected nucleosides, succinates, phosphoramidites, corresponding solid supports that are suitable for oligo deoxy nucleosides and RNA oligonucleotide synthesis. Our discovery using N-FMOC as nucleoside base protecting group, which is highly base labile protecting group is a novel approach to obtain highest purity oligonucleotides. This approach is designed to lead to very high purity and very clean oligonucleotide, after efficient removal of the protecting groups and to produce high purity therapeutic grade DNA oligonucleotides, RNA oligonucleotides, diagnostic DNA, diagnostic RNA for microarray platform. The deprotection of FMOC protecting groups of the natural deoxy and ribonucleosides occurs under very mild deprotection conditions such as mild bases, secondary and tertiary amines for removal of such groups under such conditions would allows synthesis of various DNA and RNA of highest purity for diagnostics and therapeutic application. This approach is further designed to use FMOC protecting group on various base sensitive nucleoside, and for use in oligo peptide synthesis and for support bound oligo nucleotides. DNA oligonucleotides containing 3′-end dA at the 3′-terminal will be produced using the FMOC-dA-supports would lead to much reduced M−1 deletion sequences, and thereby high purity.

    专利号:US-8138330-B2
    优先权日:2006-09-11
    标 题 :Process for the synthesis of oligonucleotides
    发明人:LEUCK MICHAEL; WOLTER ANDREAS; STUMPE ALFRED
    权利人:LEUCK MICHAEL; WOLTER ANDREAS; STUMPE ALFRED; SIGMA ALDRICH CO LLC
    摘要:The present invention discloses novel methods for the synthesis of oligonucleotides with nucleoside phosphoramidites on solid supports. The methods comprise the stepwise chain assembly of oligonucleotides on supports with 5′-acyl phosphoramidites. The synthesis cycles consist of a front end deprotection step which is conducted with a solution of a primary amine or a phenolate, a phosphoramidite coupling step with a 5′-acyl nucleoside phosphoramidite in the presence of an activator, a phosphite oxidation step and an optional capping step. The novel methods improve the quality of synthetic oligonucleotides due to the irreversibility of the front end deprotection step, which prevents the formation of deletion sequences, and due to the avoidance of acidic reagents in the synthesis cycles, which prevent the formation of depurination side products. The invention further discloses novel nucleoside phosphoramidite compositions wherein the phosphoramidites carry acyl front end protective groups which are cleavable with primary amines or phenolates. The invention is applicable to the synthesis of oligodeoxyribonucleotides, oligoribonucleotides and oligonucleotides with modifications in their sugar or phosphate groups.

    专利号:US-2024287520-A1
    优先权日:2021-06-30
    标题:Method for synthesis of linkage modified oligomeric compounds
    发明人:RODRIGUEZ ANDREW A
    权利人:IONIS PHARMACEUTICALS INC
    摘要:The present disclosure provides methods of synthesizing modified oligonucletodies and oligomeric compounds (including oligomeric compounds that are antisense agents or portions thereof) comprising a modified oligonucleotide having at least one modified internucleoside linking group. In certain embodiments, the present disclosure provides stabilized formulations of certain sulfonyl azides for use in the synthesis of olignonucleotides comprising one or more sulfonyl phosphoramidate linkages. Some embodiments provide stabilized compositions of high energy reagents that may be used in the synthesis of modified oligonucleotides, allowing for safe process scale preparation thereof.

    专利号:US-2023313255-A1
    优先权日:2020-07-15
    标题:Massively Parallel Enzymatic Synthesis of Polynucleotides
    发明人:HORGAN ADRIAN; LACHAIZE HENRI; VERARDO DOMIANO; GODRON XAVIER
    权利人:DNA SCRIPT
    摘要:The invention is directed to methods and compositions for inkjet assisted synthesis of a plurality of polynucleotides at reaction sites on a substrate using template-free polymerases, such as, terminal deoxynucleotidyl transferases (TdTs). Compositions of the invention include formulations of synthesis reagents for inkjet delivery including, but not limited to, TdT coupling reaction buffers and 3′-O-protected dNTP monomers.

    专利号:US-2004152905-A1
    优先权日:2003-01-31
    标题:Universal building blocks and support media for synthesis of oligonucleotides and their analogs
    发明人:GUZAEV ANDREI P; MANOHARAN MUTHIAH
    摘要:Compounds for the synthesis of oligomeric compounds, particularly oligonucleotides and chemically modified oligonucleotide analogs, are provided. In addition, methods for functionalization of a support medium with a first monomeric subunit and methods for the synthesis of oligomeric compounds utilizing the novel compounds bound to support media are provided.
    安徽立创生物科技有限公司
    ⚠️ 未注册 · 未认证企业
    ⚠️ 该商家尚未完成注册及企业认证,请用户仔细辨别,谨慎交易。
    数据来源于公开网络搜索,平台未作核实,请自行辨别。
    🏢敬请 企业认领
    🏬开设公司展台
    📢获取免费会员权益
    🎖️点亮专属注册企业标签
    📇展现公司完整信息 样本查看立即注册认领 →
    网址: http://www.lichuangbio.com
    企业联系电话:13329263899;18856288893👤
    📞安徽立创生物科技有限公司 ⚠️参考联系方式
    联系人:凌总
    电话:13329263899;18856288893
    手机:13329263899;18856288893

    邮箱:lyj@lichuangbio.com
    通信地址: 安徽省铜陵市郊区枞阳县陈瑶湖清水路888号
    邮编:
    🆔 联系时候可告知是从"百琢研"平台获取的信息.
    ⚠️ 声明: 该企业未认证、未认领,请自行辨别信息的真实性和可靠性。咨询或交易时请注意风险评估与信息核实,百琢研不参与任何交易。企业认领注册入口→

    地址:安徽省铜陵市郊区枞阳县陈瑶湖清水路888号
    ⚠️ 未注册 · 未认证企业
    注册入口 备注: 📌 数据来源说明:本展台内容基于各搜索引擎等公开数据整理,仅作展示用途。请用户自行辨别
    ✉️ 若企业需抹除展台内容或有异议, 请通过页面底部联系方式告知我们,我们会尽快处理。
    上海西加生物科技有限公司
    ⚠️ 未注册 · 未认证企业
    ⚠️ 该商家尚未完成注册及企业认证,请用户仔细辨别,谨慎交易。
    数据来源于公开网络搜索,平台未作核实,请自行辨别。
    🏢敬请 企业认领
    🏬开设公司展台
    📢获取免费会员权益
    🎖️点亮专属注册企业标签
    📇展现公司完整信息 样本查看立即注册认领 →
    网址: http://www.sigachem.com
    企业联系电话:18901978308👤
    📞上海西加生物科技有限公司 ⚠️参考联系方式
    联系人:龚经理
    电话:18901978308
    手机:13764598896

    邮箱:grace8018@163.com
    通信地址: 上海市崇明区新河镇新申路921弄2号W区175室
    邮编:
    🆔 联系时候可告知是从"百琢研"平台获取的信息.
    ⚠️ 声明: 该企业未认证、未认领,请自行辨别信息的真实性和可靠性。咨询或交易时请注意风险评估与信息核实,百琢研不参与任何交易。企业认领注册入口→

    地址:上海市崇明区新河镇新申路921弄2号W区175室
    ⚠️ 未注册 · 未认证企业
    注册入口 备注: 📌 数据来源说明:本展台内容基于各搜索引擎等公开数据整理,仅作展示用途。请用户自行辨别
    ✉️ 若企业需抹除展台内容或有异议, 请通过页面底部联系方式告知我们,我们会尽快处理。
    浙江天和树脂有限公司
    ⚠️ 未注册 · 未认证企业
    ⚠️ 该商家尚未完成注册及企业认证,请用户仔细辨别,谨慎交易。
    数据来源于公开网络搜索,平台未作核实,请自行辨别。
    🏢敬请 企业认领
    🏬开设公司展台
    📢获取免费会员权益
    🎖️点亮专属注册企业标签
    📇展现公司完整信息 样本查看立即注册认领 →
    网址: http://www.chinaresins.com
    电话: 021-57485068👤
    📞浙江天和树脂有限公司 ⚠️参考联系方式

    销售电话:021-57485068
    邮箱:roger@chinaresins.com
    🆔 联系时候可告知是从"百琢研"平台获取的信息.
    ⚠️ 声明: 该企业未认证、未认领,请自行辨别信息的真实性和可靠性。咨询或交易时请注意风险评估与信息核实,百琢研不参与任何交易。企业认领注册入口→

    ⚠️ 未注册 · 未认证企业
    注册入口 备注: 📌 数据来源说明:本展台内容基于各搜索引擎等公开数据整理,仅作展示用途。请用户自行辨别 ✉️ 若企业需抹除展台内容或有异议, 请通过页面底部联系方式告知我们,我们会尽快处理。
    洛阳德胜生物科技股份有限公司
    ⚠️ 未注册 · 未认证企业
    ⚠️ 该商家尚未完成注册及企业认证,请用户仔细辨别,谨慎交易。
    数据来源于公开网络搜索,平台未作核实,请自行辨别。
    🏢敬请 企业认领
    🏬开设公司展台
    📢获取免费会员权益
    🎖️点亮专属注册企业标签
    📇展现公司完整信息 样本查看立即注册认领 →
    网址: http://www.adeninechem.com
    电话: 0379-63339336👤
    📞洛阳德胜生物科技股份有限公司 ⚠️参考联系方式

    销售电话:0379-63339336
    邮箱:huangxiaofeng99@hotmail.com
    🆔 联系时候可告知是从"百琢研"平台获取的信息.
    ⚠️ 声明: 该企业未认证、未认领,请自行辨别信息的真实性和可靠性。咨询或交易时请注意风险评估与信息核实,百琢研不参与任何交易。企业认领注册入口→

    ⚠️ 未注册 · 未认证企业
    注册入口 备注: 📌 数据来源说明:本展台内容基于各搜索引擎等公开数据整理,仅作展示用途。请用户自行辨别 ✉️ 若企业需抹除展台内容或有异议, 请通过页面底部联系方式告知我们,我们会尽快处理。
    无锡景耀生物科技有限公司
    ⚠️ 未注册 · 未认证企业
    ⚠️ 该商家尚未完成注册及企业认证,请用户仔细辨别,谨慎交易。
    数据来源于公开网络搜索,平台未作核实,请自行辨别。
    🏢敬请 企业认领
    🏬开设公司展台
    📢获取免费会员权益
    🎖️点亮专属注册企业标签
    📇展现公司完整信息 样本查看立即注册认领 →
    网址: http://www.jingyaobiotech.com
    企业联系电话:0510-88770633👤
    📞无锡景耀生物科技有限公司 ⚠️参考联系方式
    联系人:王正智
    电话:0510-88770633
    手机:13961738808;15161581380
    传真:0510-88770633
    邮箱:jingyaobiotech@126.com
    通信地址: 无锡市锡山区东港镇兴港北路237号
    邮编: 214199
    🆔 联系时候可告知是从"百琢研"平台获取的信息.
    ⚠️ 声明: 该企业未认证、未认领,请自行辨别信息的真实性和可靠性。咨询或交易时请注意风险评估与信息核实,百琢研不参与任何交易。企业认领注册入口→

    地址:无锡市锡山区东港镇兴港北路237号
    ⚠️ 未注册 · 未认证企业
    注册入口 备注: 📌 数据来源说明:本展台内容基于各搜索引擎等公开数据整理,仅作展示用途。请用户自行辨别
    ✉️ 若企业需抹除展台内容或有异议, 请通过页面底部联系方式告知我们,我们会尽快处理。
    杭州鼎燕化工有限公司
    ⚠️ 未注册 · 未认证企业
    ⚠️ 该商家尚未完成注册及企业认证,请用户仔细辨别,谨慎交易。
    数据来源于公开网络搜索,平台未作核实,请自行辨别。
    🏢敬请 企业认领
    🏬开设公司展台
    📢获取免费会员权益
    🎖️点亮专属注册企业标签
    📇展现公司完整信息 样本查看立即注册认领 →
    网址: http://www.dingyanchem.com
    企业联系电话:18267553885👤
    📞杭州鼎燕化工有限公司 ⚠️参考联系方式
    联系人:林女士
    电话:18267553885
    手机:18267553885
    传真:0571-87156470
    邮箱:sales@dingyanchem.com
    通信地址: 杭州市江干区下沙19号大街571号下沙电子商务园4A601-602室
    邮编: 310018
    🆔 联系时候可告知是从"百琢研"平台获取的信息.
    ⚠️ 声明: 该企业未认证、未认领,请自行辨别信息的真实性和可靠性。咨询或交易时请注意风险评估与信息核实,百琢研不参与任何交易。企业认领注册入口→

    地址:杭州市江干区下沙19号大街571号下沙电子商务园4A601-602室
    ⚠️ 未注册 · 未认证企业
    注册入口 备注: 📌 数据来源说明:本展台内容基于各搜索引擎等公开数据整理,仅作展示用途。请用户自行辨别
    ✉️ 若企业需抹除展台内容或有异议, 请通过页面底部联系方式告知我们,我们会尽快处理。
    杭州铠朋生物技术有限公司
    ⚠️ 未注册 · 未认证企业
    ⚠️ 该商家尚未完成注册及企业认证,请用户仔细辨别,谨慎交易。
    数据来源于公开网络搜索,平台未作核实,请自行辨别。
    🏢敬请 企业认领
    🏬开设公司展台
    📢获取免费会员权益
    🎖️点亮专属注册企业标签
    📇展现公司完整信息 样本查看立即注册认领 →
    网址: http://www.kpbio.cn
    企业联系电话:0571-89939007👤
    📞杭州铠朋生物技术有限公司 ⚠️参考联系方式
    联系人:销售部
    电话:0571-89939007
    手机:13675889963
    传真:0571-89939007
    邮箱:sales@kpbio.cn
    通信地址: 杭州市西湖区文一西路460号
    邮编: 310000
    🆔 联系时候可告知是从"百琢研"平台获取的信息.
    ⚠️ 声明: 该企业未认证、未认领,请自行辨别信息的真实性和可靠性。咨询或交易时请注意风险评估与信息核实,百琢研不参与任何交易。企业认领注册入口→

    地址:杭州市西湖区文一西路460号
    ⚠️ 未注册 · 未认证企业
    注册入口 备注: 📌 数据来源说明:本展台内容基于各搜索引擎等公开数据整理,仅作展示用途。请用户自行辨别
    ✉️ 若企业需抹除展台内容或有异议, 请通过页面底部联系方式告知我们,我们会尽快处理。
    第 1 / 1 页
    现货

    供应商参考报价(招募中)

    品牌试剂参考报价(招募中)

    📌 第三方产品分析报告

    ✅ COA系统入驻 | 共享模式

    主要参考文献

    [参考文献]: I Remy, Et Al. Detection And Visualization Of Protein Interactions With Protein Fragment Complementation Assays. Methods Mol Biol. 2002:185:447-59.
    [参考文献]: M Nakamura, Et Al. Regulation Of Glucose Metabolism By Adenine Nucleotides In Round Spermatids From Rat Testes. J Biol Chem. 1982 Dec 10;257(23):13945-50.
    [参考文献]: Martha J Folmsbee, Et Al. Anaerobic Growth Of Bacillus Mojavensis And Bacillus Subtilis Requires Deoxyribonucleosides Or Dna. Appl Environ Microbiol. 2004 Sep;70(9):5252-7.
    [参考文献]: O Magnus, Et Al. Provocation Testing Of Human Sperm Motility Using Energy Substrates And Activators Of The Cyclic Nucleotide System: Ii. Studies On Sperm From Asthenozoospermic Subjects. Int J Fertil. 1993 Mar-Apr;38(2):123-8.
    [参考文献]: Sonya M Schuh, Et Al. Adenosine And Catecholamine Agonists Speed The Flagellar Beat Of Mammalian Sperm By A Non-Receptor-Mediated Mechanism. Biol Reprod. 2007 Dec;77(6):960-9.

    合成参考文献


    参考文献:10.1007/s00216-006-0456-8
    摘要:Hansen HR, Pergantis SA. Mass spectrometric identification and characterization of antimony complexes with ribose-containing biomolecules and an RNA oligomer. Analytical and Bioanalytical Chemistry. 2006 Jun 13;385(5):821–33. doi: 10.1007/s00216-006-0456-8.
    📝 需求与反馈
    尽可能描述清楚需求与问题信息
    ×

    通知